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Improving the Structural, Optical and Electrical Properties of ITO Nano-Layered Thin Films by Gas Flow Argon

机译:通过气流氩改善ITO纳米层层薄膜的结构,光学和电性能

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Indium tin oxide (ITO) thin films of 150 nm thickness were deposited on quartz glass substrates by RF sputtering technique, followed by thermal annealing treatment. In this technique, the samples have been annealed at different temperature, 300°C, 400°C, 500°C respectively in Argon gas flow. Structural and surface morphological properties were analyzed by X-ray diffraction (XRD) and Atomic Force Microscopy (AFM) after annealing. The XRD showed a polycrystalline structure of ITO film with maximum peak intensity at 26= 30.54, <222> orientation without any change in the cubic structure. Continuous and homogeneous films obtained by the AFM after annealing treatment. The visible spectrum from the spectrophotometer showed high transparency between 81% and 95% in the. Increasing the annealing temperature yields evenly distributed pyramidal peaks shaped particles with low roughness. Resistance of ITO thin film was significantly improved from 8.75 kΩ to 1.96 kΩ after 10 minute from 300°C to 500°C annealing temperatures respectively under Argon gas flow. ITO films physical properties would be well improved by this method which is highly suitable for cost effective photonic devices.
机译:通过RF溅射技术沉积在石英玻璃基板上沉积150nm厚的氧化铟锡(ITO)薄膜,然后进行热退火处理。在该技术中,样品分别在氩气体流动中以不同的温度,300℃,400℃,500℃退火。通过退火后通过X射线衍射(XRD)和原子力显微镜(AFM)分析结构和表面形态学性质。 XRD显示了ITO膜的多晶结构,最大峰强度为26 = 30.54,<222>取向,没有任何变化的立方结构。通过退火处理后AFM获得的连续和均匀薄膜。来自分光光度计的可见光谱显示出高透明度在81%和95%之间。增加退火温度产生均匀分布的锥形峰值成形颗粒,具有低粗糙度。在氩气流量下,10分钟至500°C退火温度,ITO薄膜的电阻从8.75kΩ到1.96kΩ显着提高到1.96kΩ。通过该方法,ITO薄膜物理性质将得到很好的改善,这对于具有成本效益的光子器件非常适合。

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